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首页> 外文期刊>Simulation modelling practice and theory: International journal of the Federation of European Simulation Societies >Simulation of Stokes flow over microelectrodes with least-squares meshfree method
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Simulation of Stokes flow over microelectrodes with least-squares meshfree method

机译:最小二乘无网格法模拟微电极上的斯托克斯流

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Microelectrode structures in alternating current (AC) electrokinetics can generate high electric field strength to manipulate, characterize and separate particles in suspending medium. It has been widely used in biological, pharmaceutical and medical fields. In this paper, a least-squares meshfree method (LSMFM) based on the first-order velocity-pressure-vorticity formulation for the Stokes flow, electric potential-electric ield strength expression for electric field and temperature-heat flux equations for heat transfer problem is presented to study two-dimensional electrothermally induced fluid flow over microelectrodes. Joule heat generated from electric field acts as heat source and gives rise to electric force and buoyancy force acting on the fluid. The discretization of all system of equations is completed by the least-squares method. The equal-order moving least-squares (MLS) approximation is used with Gaussian quadrature in the background cells constructed by the quadtree algorithm. A matrix-free element-by-element Jacobi preconditioned conjugate gradient method is applied to solve the resulting systems. Finally, an example of steady heat transfer problem with analytical solution is devised to analyze the error estimates of the LSMFM, and the examples of electric field of shielded microstrip line and Stokes flow over microelectrode are also solved to investigate the features of the LSMFM. (C) 2007 Elsevier B.V. All rights reserved.
机译:交流电(AC)动力学中的微电极结构可以产生高电场强度,以操纵,表征和分离悬浮介质中的颗粒。它已被广泛用于生物,制药和医学领域。基于斯托克斯流的一阶速度-压力-涡度公式,电场的势-电场场强表达式以及传热的温度-热通量方程,基于最小二乘无网格法(LSMFM)提出了研究二维电热诱导流体在微电极上流动的问题。电场产生的焦耳热充当热源,并产生作用在流体上的电力和浮力。所有方程组的离散化都是通过最小二乘法完成的。等高移动最小二乘(MLS)近似与高斯正交一起用于由四叉树算法构造的背景单元中。应用无矩阵逐元素Jacobi预处理共轭梯度方法来求解所得系统。最后,设计了一个带有解析解的稳态传热问题实例来分析LSFMM的误差估计,并以屏蔽微带线的电场和斯托克斯流过微电极的实例为例研究了LSFMM的特性。 (C)2007 Elsevier B.V.保留所有权利。

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